The invention relates to an illuminable emblem, in particular for a motor vehicle, which is simple and inexpensive to produce and which permits easy identifiability in darkness.
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1. An illuminable emblem comprising:
a housing having a front cover and a rear-side housing base, wherein the front cover is transparent on a front side, wherein the front cover and the housing base are connected to each other and enclose a cavity, wherein a flat light conductor and a screen are arranged in the cavity such that light can emerge from the flat light conductor and can pass through the screen, wherein the screen is transparent at least in regions,
wherein the flat light conductor has an at least partially encircling, raised edge region and a flat region, wherein the at least partially encircling region has at least one light coupling-in surface, wherein at least one illuminant is arranged adjacent to the coupling-in surface and is configured to emit light into the raised edge region through the coupling-in surface, wherein the raised edge region has a recess having a curved edge, wherein the curved edge is configured to deflect light emitted from the at least one illuminant in a circumferential direction and an axial direction.
2. The illuminable emblem according to
3. The illuminable emblem according to
4. The illuminable emblem according to
5. The illuminable emblem according to
6. The illuminable emblem according to
7. The illuminable emblem according to
8. The illuminable emblem according to
9. The illuminable emblem according to
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This application is based upon and claims the benefit of priority from prior German Patent Application No. 10 2017 217 507.9, filed Sep. 29, 2017, the entire contents of which are incorporated herein by reference in their entirety.
The invention relates to an illuminable emblem, in particular for a motor vehicle.
In motor vehicles, emblems which, for example, identify the vehicle manufacturer or the vehicle type are known, in particular on the front end and at the rear. Such emblems, for example also as a flap closure element, may actuate a lock or serve as a radome and cover a radar sensor. The known emblems are produced, for example, as metal plaques or plastic plaques and are typically not visible or only poorly visible at night.
Recently, there has been interest in illuminating such emblems so that they are clearly visible even in darkness.
DE 10 2015 220 341 A1 has disclosed an illuminable emblem as a radome for covering a radar sensor. It has been shown here that, owing to the flat design of the light conductors and owing to the coupling of the illuminants on the rear side of the individual flat light conductors, a higher number of illuminants are required.
The problem addressed by the invention is that of providing an illuminable emblem which is simple and inexpensive to produce and which permits easy identifiability in darkness, wherein a small number of required illuminants is preferred.
Said problem is solved by means of the features of claim 1.
An exemplary embodiment of the invention relates to an illuminable emblem, in particular for a motor vehicle, having a housing with a front cover which is transparent on a front side, and a rear-side housing base, which front cover and housing base are connected to each other and enclose a cavity, wherein a flat light conductor and a screen which is transparent at least in regions are arranged in the cavity such that light can emerge from the flat light conductor and can pass through the screen, wherein the flat light conductor has an at least partially encircling, raised edge region and a flat region which has at least one light coupling-in region at which at least one illuminant is arranged for the coupling-in of light into the raised edge region, wherein deflecting means are provided in the region of the raised edge region, said deflecting means being designed in such a manner that light is deflected by them from the at least one edge region in the circumferential direction of the raised edge region and/or into the flat region of the flat light conductor. The effect achieved by this is that only a few illuminants are sufficient in order to illuminate the flat emblem, and therefore the illuminable emblem can be produced simply and inexpensively because it reduces the use of illuminants required and nevertheless is easily identifiable even in darkness.
It is particularly advantageous if the raised edge region is provided with a recess in such a manner that an edge region of the recess is in the form of a flat deflecting means. The raised edge region itself serves as the deflecting means by means of the recess formed therein, or itself forms the deflecting means, and therefore preferably no deflecting means to be additionally fitted have to be provided.
In one exemplary embodiment, it is advantageous if the edge region of the recess is of curved or parabolic design and serves as the deflecting means. This produces a favorable light distribution in the encircling, raised edge region, which permits good illumination of the emblem.
In a further exemplary embodiment, it is expedient if the edge region of the recess forms two opposite flat deflecting means which are in particular arranged symmetrically with respect to each other. The effect achieved by this is that the light is fed from one or from two feeding-in regions on both sides into the raised edge region in order to permit good and more uniform illumination of the emblem.
It is also advantageous if the raised edge region has an end surface which serves as a coupling-in surface for the light of an illuminant, wherein the at least one illuminant lies against the coupling-in surface or is arranged adjacent thereto. The effect achieved by this is that the illuminants are arranged in an axial extension of the raised edge region, which saves construction space in the central region of the emblem.
It is also advantageous if the recess of the raised edge region is designed in such a manner that at least one partially released tongue is formed which has a coupling-in surface for the light of an illuminant, wherein the at least one illuminant lies against the coupling-in surface or is arranged adjacent thereto. This makes it possible for the illuminant or the illuminants to be arranged in the region of the raised edge region, which saves construction space overall.
It is particularly advantageous if two partially released tongues are formed which lie opposite each other, wherein the respective coupling-in surfaces lie opposite each other, and the illuminants are arranged between the two coupling-in surfaces of the tongues. This in turn achieves good illumination of the emblem.
It is also particularly advantageous if interfering optics are arranged in the transition region between the raised edge region and the flat region, said interfering optics serving as the deflecting means for deflecting the light from the raised edge region into the flat region. As a result, the light is conducted from the raised edge region into the flat region of the light conductor, and therefore the light can be uniformly distributed in the surface.
It is particularly advantageous if interfering optics are arranged in the flat region, said interfering optics serving as the deflecting means for deflecting the light out of the flat region. The light is therefore effectively conducted out of the surface to the front cover, which is transparent on the front side, and therefore the emblem appears illuminated when viewed from the front.
It is particularly advantageous if the interfering optics in the flat region are in the form of eroded surfaces on that side of the flat region which faces away from the front cover. These eroded, i.e. roughed, surfaces can be introduced simply and in a defined manner in the surface, which brings about a defined conducting out of the light.
Alternatively or additionally to the interfering optics, in particular the interfering optics in the flat region, the light conductor can also be produced from a material having dispersive properties, as a result of which a uniform distribution of light can be achieved. For example, the light conductor can be produced from a light conductor material, such as glass, PC, PMMA, silicone or the like, wherein diffusive particles are added to the light conductor material, by means of which the desired diffusive properties can be produced. Said diffusive particles then also serve as what are referred to as interfering optics.
Further advantageous refinements are described by the following description of the figures and by the dependent claims.
The invention will be explained in more detail below on the basis of at least one exemplary embodiment with reference to the drawings, in which:
The illuminable emblem 1 has at least one illuminant which is switchable on and off and/or is also controllable in terms of its brightness and/or in terms of its color such that the emblem is illuminable. The emblem is illuminated here in particular from an inner region, such that, as viewed from the outside, in particular as viewed from the front of the emblem, said emblem is self-illuminating when the at least one illuminant is switched on.
The illuminable emblem 1 has a housing 2 with a front cover 3 which is transparent on a front side and with a rear-side housing base 4. In a frontal view, the emblem here is, for example, of round or angular design, depending on the configuration of the emblem. The front cover 3 and the housing base 4 are preferably connected to each other in a sealed manner in order to enclose a cavity which, in the sealed exemplary embodiment, protects the elements arranged in the cavity from dirt and moisture. Should this not be necessary, it is also possible for the housing not to be formed in a sealed manner. In this case, the front cover and the housing base would merely be formed in a manner connected to each other, such as connected to each other directly or indirectly.
A flat light conductor 6 and a screen 7 which is transparent at least in regions are arranged in the cavity 5, wherein the screen 7 is arranged between the front cover and the light conductor 6.
The screen 7 is therefore formed in a manner such that it is transparent at least in regions because regions 8 therein are recessed or formed in a transparent manner in order to allow light to pass from the light conductor 6 towards the front cover 3 so that an observer standing in front of the front cover 3 sees that the emblem 1 is illuminated. The light therefore exits from the flat light conductor 6 towards the front cover and passes through the screen 7 and through the front cover 3.
The recessed or transparent regions 8 can preferably produce a pattern which is intended to be identified as the pattern of the screen and therefore as the pattern of the emblem, for example a logo, etc.
The screen 7 and the light conductor 6 are typically formed spaced apart from each other in their central flat region and take up a spacing a.
The light conductor 6 and the housing base 4 are typically also formed spaced apart from each other in their central flat region and take up a spacing d.
The flat light conductor 6 has an at least partially encircling, raised edge region 9 and a flat region 10.
The raised edge region 9 here has at least one light coupling-in region 11 at which at least one illuminant 12 is arranged, for coupling light into the raised edge region 9. In this case, as
The regions 8 which are formed in a recessed or transparent manner in order to allow light to pass from the light conductor 6 to the front cover 3 can also be seen in
It is particularly preferred here if the edge region 14 of the recess 13 forms two opposite flat deflecting means 20 which are in particular arranged symmetrically with respect to each other. As a result, the light can be distributed in the light conductor 6 in both directions. For this purpose, two illuminants 12 are preferably then also provided which are arranged in particular on the end surface 15 adjacent to the deflecting means 20. In particular, the illuminants 12 are designed as LEDs or the like and are placed onto the end surface 15 adjacent and in particular spaced apart from one another.
The raised edge region 9 thus has an end surface 15 which serves as a coupling-in surface for the light of an illuminant 12, wherein the at least one illuminant 12 lies against the coupling-in surface or is arranged adjacent thereto.
The exemplary embodiment of
In the exemplary embodiment of
For the deflection of the light from the raised edge region 9 towards the flat region 10, interfering optics 24 are arranged in the transition region 23 between the raised edge region 9 and the flat region 10, said interfering optics serving as the deflecting means for deflecting the light from the raised edge region 9 into the flat region 10.
For the deflection of the light out of the flat region towards the front cover 3, interfering optics 25, see
Said interfering optics 25 in the flat region are, for example, in the form of eroded surfaces on that side of the flat region 10 which faces away from the front cover 3.
The screen 7 can be formed from a deep-drawn film which, for example, can be punched in order to form the regions 8. The non-transparent regions may also be printed, for example. The transparent regions may also be colored, for example, in order to obtain a, for example, milky appearance or impression. The housing base 4 is advantageously adhesively bonded or welded to the front cover 3, wherein they are advantageously produced individually or both from plastic. The housing base 4 is advantageously colored white, black or some other color, wherein, in the case of a white coloring, the degree of reflection is higher.
The front cover 3 can advantageously be produced from a deep-drawn film which advantageously has, for example, plastic, such as, for example, PVC, sprayed therebehind.
Patent | Priority | Assignee | Title |
10651550, | Oct 19 2015 | HELLA GMBH & CO KGAA | Radome |
Patent | Priority | Assignee | Title |
4965950, | Mar 23 1987 | KOITO MANUFACTURING CO , LTD | Display device for automotive mark plate |
7726862, | Jul 30 2008 | Chi Mei Communication Systems, Inc. | Indicator light using light guiding unit |
20040096182, | |||
20070159846, | |||
20120147617, | |||
20140056015, | |||
20170357044, | |||
DE10153543, | |||
DE102007010328, | |||
DE102015220341, | |||
DE3239783, | |||
GB2435937, | |||
WO2017220181, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Sep 28 2018 | Hella GmbH & Co. KGaA | (assignment on the face of the patent) | / | |||
Oct 18 2018 | SCHONE, HEIKO | HELLA GMBH & CO KGAA | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 047233 | /0491 | |
Oct 18 2018 | BIZAL, ANA | HELLA GMBH & CO KGAA | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 047233 | /0491 |
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